Discovery of a dwarf planet candidate in an extremely wide orbit: 2017 OF201
arXiv:2505.15806 · doi:10.3847/2041-8213/ae3a75
Abstract
We report the discovery of a dwarf planet candidate, 2017 OF201, currently located at a distance of 90 au. Its orbit is extremely wide and extends to the inner Oort cloud, with a semi-major axis of 830 au and a perihelion of 45 au, precisely determined from 24 observations over 20 years. Assuming a typical albedo of 0.13, we estimate a diameter about 700 km, making it the second-largest known object in this dynamical population and a dwarf planet candidate with the widest orbit. Its high eccentricity suggests that an unseen population of similar objects would total about 1% of Earth's mass. Notably, the longitude of perihelion of 2017 OF201 lies outside the clustering observed in extreme trans-Neptunian objects, posing a challenge to the proposed dynamical evidence for the hypothetical Planet Nine.
6 pages, 5 figures
References in corpus (8)
- The Scattered Disk as the source of the Jupiter Family comets
- The Diverse Solar Phase Curves of Distant Icy Bodies. Part I: Photometric Observations of 18 Trans-Neptunian Objects, 7 Centaurs, and Nereid
- OSSOS VI. Striking Biases in the detection of large semimajor axis Trans-Neptunian Objects
- New Extreme Trans-Neptunian Objects: Towards a Super-Earth in the Outer Solar System
- A search of the full six years of the Dark Energy Survey for outer Solar System objects
- The hot main Kuiper belt size distribution from OSSOS
- The Stability Boundary of the Distant Scattered Disk
- Injection of Inner Oort Cloud Objects Into the Distant Kuiper Belt by Planet Nine